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LAT1-Targeting Thermoresponsive Fluorescent Polymer Probes for Cancer Cell Imaging

L-type amino acid transporter 1 (LAT1) is more highly expressed in cancer cells compared with normal cells. LAT1 targeting probes would therefore be a promising tool for cancer cell imaging. In this study, LAT1-targeting thermoresponsive fluorescent polymer probes based on poly(N-isopropylacrylamide...

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Autores principales: Matsuura, Minami, Ohshima, Mariko, Hiruta, Yuki, Nishimura, Tomohiro, Nagase, Kenichi, Kanazawa, Hideko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6032285/
https://www.ncbi.nlm.nih.gov/pubmed/29865203
http://dx.doi.org/10.3390/ijms19061646
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author Matsuura, Minami
Ohshima, Mariko
Hiruta, Yuki
Nishimura, Tomohiro
Nagase, Kenichi
Kanazawa, Hideko
author_facet Matsuura, Minami
Ohshima, Mariko
Hiruta, Yuki
Nishimura, Tomohiro
Nagase, Kenichi
Kanazawa, Hideko
author_sort Matsuura, Minami
collection PubMed
description L-type amino acid transporter 1 (LAT1) is more highly expressed in cancer cells compared with normal cells. LAT1 targeting probes would therefore be a promising tool for cancer cell imaging. In this study, LAT1-targeting thermoresponsive fluorescent polymer probes based on poly(N-isopropylacrylamide-co-N,N-dimethylacrylamide) (P(NIPAAm-co-DMAAm)) were synthesized and their affinity for LAT1 was evaluated. The synthesized polymer probes interacted with LAT1 on HeLa cells, and inhibition of l-[(3)H]-leucine, one of the substrates for LAT1 uptake, was investigated. l-Tyrosine-conjugated P(NIPAAm-co-DMAAm) inhibited the uptake of l-[(3)H]-leucine, while P(NIPAAm-co-DMAAm) and l-phenylalanine-conjugated P(NIPAAm-co-DMAAm) did not. This result indicated that l-tyrosine-conjugated polymer has a high affinity for LAT1. The fluorescent polymer probes were prepared by modification of a terminal polymer group with fluorescein-5-maleimide (FL). Above the polymer transition temperature, cellular uptake of the polymer probes was observed because the polymers became hydrophobic, which enhanced the interaction with the cell membrane. Furthermore, quantitative analysis of the fluorescent probe using flow cytometry indicated that l-tyrosine-conjugated P(NIPAAm-co-DMAAm)-FL shows higher fluorescence intensity earlier than P(NIPAAm-co-DMAAm)-FL. The result suggested that cellular uptake was promoted by the LAT1 affinity site. The developed LAT1-targeting thermoresponsive fluorescent polymer probes are expected to be useful for cancer cell imaging.
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spelling pubmed-60322852018-07-13 LAT1-Targeting Thermoresponsive Fluorescent Polymer Probes for Cancer Cell Imaging Matsuura, Minami Ohshima, Mariko Hiruta, Yuki Nishimura, Tomohiro Nagase, Kenichi Kanazawa, Hideko Int J Mol Sci Article L-type amino acid transporter 1 (LAT1) is more highly expressed in cancer cells compared with normal cells. LAT1 targeting probes would therefore be a promising tool for cancer cell imaging. In this study, LAT1-targeting thermoresponsive fluorescent polymer probes based on poly(N-isopropylacrylamide-co-N,N-dimethylacrylamide) (P(NIPAAm-co-DMAAm)) were synthesized and their affinity for LAT1 was evaluated. The synthesized polymer probes interacted with LAT1 on HeLa cells, and inhibition of l-[(3)H]-leucine, one of the substrates for LAT1 uptake, was investigated. l-Tyrosine-conjugated P(NIPAAm-co-DMAAm) inhibited the uptake of l-[(3)H]-leucine, while P(NIPAAm-co-DMAAm) and l-phenylalanine-conjugated P(NIPAAm-co-DMAAm) did not. This result indicated that l-tyrosine-conjugated polymer has a high affinity for LAT1. The fluorescent polymer probes were prepared by modification of a terminal polymer group with fluorescein-5-maleimide (FL). Above the polymer transition temperature, cellular uptake of the polymer probes was observed because the polymers became hydrophobic, which enhanced the interaction with the cell membrane. Furthermore, quantitative analysis of the fluorescent probe using flow cytometry indicated that l-tyrosine-conjugated P(NIPAAm-co-DMAAm)-FL shows higher fluorescence intensity earlier than P(NIPAAm-co-DMAAm)-FL. The result suggested that cellular uptake was promoted by the LAT1 affinity site. The developed LAT1-targeting thermoresponsive fluorescent polymer probes are expected to be useful for cancer cell imaging. MDPI 2018-06-01 /pmc/articles/PMC6032285/ /pubmed/29865203 http://dx.doi.org/10.3390/ijms19061646 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Matsuura, Minami
Ohshima, Mariko
Hiruta, Yuki
Nishimura, Tomohiro
Nagase, Kenichi
Kanazawa, Hideko
LAT1-Targeting Thermoresponsive Fluorescent Polymer Probes for Cancer Cell Imaging
title LAT1-Targeting Thermoresponsive Fluorescent Polymer Probes for Cancer Cell Imaging
title_full LAT1-Targeting Thermoresponsive Fluorescent Polymer Probes for Cancer Cell Imaging
title_fullStr LAT1-Targeting Thermoresponsive Fluorescent Polymer Probes for Cancer Cell Imaging
title_full_unstemmed LAT1-Targeting Thermoresponsive Fluorescent Polymer Probes for Cancer Cell Imaging
title_short LAT1-Targeting Thermoresponsive Fluorescent Polymer Probes for Cancer Cell Imaging
title_sort lat1-targeting thermoresponsive fluorescent polymer probes for cancer cell imaging
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6032285/
https://www.ncbi.nlm.nih.gov/pubmed/29865203
http://dx.doi.org/10.3390/ijms19061646
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